After applying the update Windows KB3072630, many people have a problem with Solidworks, namely the error "Failed to create ToolboxLibrary object". It affects 2011-2015 and Solidworks 2016 beta.
Symptoms
Instability may appear in many different functional areas of the software, so the list below may not be complete. Known symptoms are:
Crashes when recording, playing or editing a SOLIDWORKS Macro.
Missing add-ins from the SOLIDWORKS add-ins list in the Tools menu.
Error when launching SOLIDWORKS or opening a file: “Could not load SOLIDWORKS DLL: GdtAnalysisSupport.dll”.
Instability when using Equations;
Error when launching SOLIDWORKS or SOLIDWORKS Explorer: “DWG document manager library is invalid or missing
Error "Failed to create ToolboxLibrary object".
The error “The system administrator has set policies to prevent this installation” is displayed when attempting to apply a service pack to SOLIDWORKS with administrative rights.
After an installation or upgrade of SOLIDWORKS, many SOLIDWORKS add-ins are missing from the add-ins list
SOLIDWORKS crashes when launching, with a SWVBAServer error. This also happens when recording, playing, or editing a SOLIDWORKS Macro
The error “Could not load SOLIDWORKS DLL: sldshellutils” error is returned when selecting “Pack and Go…” from SOLIDWORKS or SOLIDWORKS Explorer
SOLIDWORKS Treehouse crashes when launching.
How to fix these errors:
First, check if you have KB3072630 installed:
From the Windows Control Panel, click Windows Update.
In the left pane, click View update history.
Browse the list of installed updates to check if KB3072630 was installed. If present, it will have been installed on or after July 14 2015.
If KB3072630 is installed on your system please review the recommendations in the applicable scenario below.
On the Windows Control Panel, click Windows Update. In the left pane, click View update history. Review the list of installed updates, to ensure that it was liustanovleno update KB3072630. If KB3072630 update has been installed on your system, check the directions to correct errors. The solution recommended by Microsoft and Solidworks Corp is as follows: Click Start, click Run, in the Open box, type regedit, and then click OK. Locate and then click the following registry subkey: HKEY_LOCAL_MACHINE\SOFTWARE\Policies\Microsoft\Windows\Installer Note: If this section does not exist, create it. On the Edit menu, point to New, and then click the value of DWORD. DWORD name, type RemappedElevatedProxiesPolicy and then press ENTER. Right-click RemappedElevatedProxiesPolicyi then click Modify. In the Value data box, type 1, and then click OK. Install the required application (Solidworks). After successful installation of the application, RemappedElevatedProxiesPolicy reset the DWORD value to 0, to include Security Patch 3,072,630 KB. The whole operation can be simplified: Download and unzip the file FIX_KB3072630.zip. Run the "RunAfterRepair_enable_KB3072630.reg"
After adding information to the registry, run the installation of Solidworks and select "Repair the individul installation" option.
At the end of the recovery run Solidworks "RunBeforeRepair_disable_KB3072630.reg" file
TheDTV Shredderis the first true crossover vehicle for action and power sports. A combination of tank, skateboard and motocross bike, the DTV (Dual Tracked Vehicle) Shredder is the first year-round, all-terrain vehicle and with it, the entire outdoors become your personal playground. It’s compact enough to fit in the trunk of your car.
Two aggressive tank-treads, skateboard deck and powerful 4-stroke 196cc engine make it capable of traveling through sand, snow, trials and even mountainsides at high speed.
KEY FEATURES
Suspension, Chassis & Drive Systems
Chassis/Suspension/Drive Systems Aluminum & Tubular Steel 6-point, independently articulating suspension system Patented, variable speed, track-biasing CVT system Paddle-style, reinforced, continuous molded rubber track (x2) Cast aluminum swing-arms
Engine
196cc 14hp @ 5,400 rpm 15ft-lb torque 4-stroke gasoline engine Control System & Acceleration
Control System
Pivoting deck steering mechanism (skateboard style) 15” deck lean angle left-right, from horizontal Fixed handle position left-right, multiple incline positioning front-back Thumb throttle acceleration Hydraulic Brakes Shipping Dimensions 1300 x 760 x 650 mm Gross Weight: 145 kg Machine Specifications
General Machine Specification
Overall vehicle Size: 47” x 27” x 25” (LxWxH) with handle in lowered position, 50” (H) with handle in upright position Machine Weight: 280 lbs Top Speed: +25 mph (40 km/h), with factory gearing
Dinnissen Process Technology uit Sevenum staat bekend om haar innovatieve technieken om poeders en korrels te verwerken tot onder andere voedingsmiddelen, veevoeders, medicijnen en chemische producten. Voor het ontwerp van haar innovatieve machines en complete productieprocessen maakt Dinnissen gebruik van het bekende 3D ontwerpprogramma "SOLIDWORKS". De 2.7 Miljoen gebruikers van dit ontwerpprogramma starten voortaan op met een afbeelding van de Hamex Hamermolen van Dinnissen. Dinnissen is zeer vereerd dat Solids Works haar foto selecteerde om vorm te geven aan de uitstraling van de nieuwste versie van haar ontwerpprogramma.
Ontwerp Dinnissen gekozen voor beeldvorming belangrijk ontwerpprogramma Dinnissen Process Technology ontwikkelt en fabriceert machines en complete productielijnen om poeders en korrels te verwerken tot allerlei producten in de onder andere de food, feed, farmacie en chemie. Zo is Dinnissen een bekende leverancier van technieken om babymelk, oploscacao, waspoeders, diervoeders en muesli te produceren. Voor het ontwerpen van al deze technieken maken de ontwikkelaars bij Dinnissen gebruik van het 3D ontwerpprogramma SOLIDWORKS. Daar sprong het vooruitstrevende ontwerp en de uitstraling van de machines van Dinnissen zo in het oog dat het bedrijf werd gevraagd een afbeelding te leveren voor het opstartscherm van de allernieuwste versie van het softwareprogramma. SOLIDWORKS koos voor een afbeelding van de Hamex Hamermolen met automatische zeefwisselaar van Dinnissen. Met deze innovatieve maalinstallatie kunnen fabrikanten hun producten nog sneller malen en bovendien supersnel overschakelen naar een andere maalfijnheid van hun producten. Wouter Kuijpers van Dinnissen is zeer vereerd dat ons ontwerp voor een innovatief product het symbool wordt voor één van de belangrijkste 3D ontwerpprogramma's die wereldwijd worden gebruikt. 2.7 Miljoen engineers maken zo kennis met ons bedrijf.
3D ontwerp voor betere en snellere ontwerpen van nieuwe producten Een 3D ontwerp programma als SOLIDWORKS is voor bedenkers van nieuwe technieken erg belangrijk. Een 3D ontwerp geeft klanten al vroeg in het ontwerpproces een nauwkeurig inzicht in de oplossing die voor hen is bedacht. Het ontwerpproces bij Dinnissen verloopt door het gebruik van 3D ontwerpen 25% sneller en doelgerichter. Een 3D ontwerp van een nieuw te bouwen machine biedt ook veel voordelen voor de productie. De efficiency bij Dinnissen is op deze afdeling met 15% verbeterd.
The ORION™ Delta 3D Printer is an exciting and attractive new 3D printer from the folks at SeeMe CNC that's designed to print ABS, PLA, and other materials from the very beginning. There's no need to refine or do anything to your printer - so you really have a ton more options for material than you usually do with an unmodified 3D printer.
There's also an up-front LCD panel so you can see your printing status and an on-board SD card to store up to 4GB of files. The printer runs with high speed positioning (up to 300mm/s) with high precision at 50 micron accuracy.
This printer doesn't require much set up or configuration and you can basically start printing right out of the box. Comes with a 0.5mm nozzle and includes a 1lb spool of PLA filament.
Dran Engineers Pvt. Ltd. is a global provider of advanced welding systems, including robotic weld systems, welding fixture lines, CNC machining fixtures, auto welding special-purpose machines, heavy welding fixtures, and assembly and automation systems.
A purpose-built underwater Camera Housing for the iPhone 5/*5c/5s/SE - designed and developed for the extreme abuses of water sports. This is not a case. Watershot for iPhone is a multi-feature solution specifically made to optimize photo and video capabilities for those who have traded their digital cameras for the simplicity of their smart phone. The Housing features a glass lens port and black rubberized baffle for optical image clarity, threaded lens bezel for accessory lenses and filters and features a prominent, robust and simple integrated metal mounting plate. It’s been machined with a series of three standard ¼-20 threaded tripod holes intelligently spaced. This integrated mounting plate will accommodate the Watershot® Accessory PRO Mount for utilizing endless Go-Pro® mounting options, the Watershot Pistol Grip and the Watershot Lighting Tray. Depth Rated to 130ft/40m, the iPhone is fully suspended within the Housing ensuring that the phone and screen are effectively shielded from abrasion, impact and pressure. Available colors: WHITE, BLACK, or YELLOW *(5c requires Conversion Kit WSIP5-007). GoPro® is a registered trademarks of Woodman Labs, Inc.
Watershot, Inc., designs and manufactures underwater housings for 35 mm still, video, and 16 mm/35 mm film cameras. The demand for more sophisticated underwater camera housings – such as the underwater film housings produced for Zuccarini Films, Inc., a leading underwater cinematographer – compelled the company to investigate ways to improve design efficiency and accuracy.
Robotiq offers Grippers, a Wrist Camera and Sensors that are flexible, easy to use, set up rapidly and configure in only a few minutes. Our products come in Plug + Play packages to integrate seamlessly with collaborative robots like Universal Robots. They also offer superb functionality with other industrial robots like Denso, KUKA, ABB, Yaskawa and FANUC, just to name a few.
The first step is to acquire the data that an individual’s shoes will be based on. Each customer’s feet are three dimensionally scanned. Then they put on a pair of special sensor shoes and go for a test run or walk. The sensors track their movement – footfall, pronation, balance, etc. – and combined with the scan and activity type create a usable database to build the new shoes around.